| Literature DB >> 25852383 |
Tetyana M Budnyak1, Ievgen V Pylypchuk1, Valentin A Tertykh1, Elina S Yanovska2, Dorota Kolodynska3.
Abstract
A hybrid nanocomposite materiEntities:
Keywords: 78.67.Bf; 78.67.Sc; 81.07.Pr; 81.16.Be; 82.35.Np
Year: 2015 PMID: 25852383 PMCID: PMC4385279 DOI: 10.1186/s11671-014-0722-1
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1The scheme of synthesis of chitosan-silica composite.
Figure 2FTIR spectra of chitosan (A) and chitosan-silica composite (B).
Figure 3TG-curves of chitosan (A) and composite (B) and FTIR-TG of chitosan-silica composite (C).
Figure 4Nitrogen adsorption/desorption isotherms of the composite chitosan-silica.
Figure 5Pore-size distribution curve for the composite chitosan-silica.
Figure 6The SEM images of chitosan-silica at 1,000 (A), 10,000 (B,C), and 50,000 (D) magnifications.
Percentage of carbon, hydrogen, and nitrogen and the C/N ratio for the chitosan-silica composite
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| Chitosan | 40.72 | 7.25 | 7.33 | 5.55 | [ |
| Chitosan-silica composite | 8.71 | 8.00 | 0.38 | 22.92 | This article |
Figure 7Degree of adsorption of V(V), Mo(VI), and Cr(VI) oxoanions by composite chitosan-silica as a function of medium acidity.
Degree of adsorption of V(V), Mo(VI), and Cr(VI) oxoanions by composite chitosan-silica as a function of medium acidity
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| V(V) | 26.09 | 25.00 | 35.87 | 25.00 | 37.23 |
| Mo(VI) | 48.12 | 97.25 | 90.60 | 90.95 | 11.61 |
| Cr(VI) | 66.07 | 72.48 | 73.30 | 67.75 | 69.37 |
Experimental conditions: mass of sorbent—0.1 g, volume of solution—25 ml, weight of vanadium in the initial solution—0.3 mg, weight of molybdenum in the initial solution—1 mg, and weight of chromium in the initial solution—0.1 mg.
Figure 8Adsorption isotherms of V(V), Mo(VI), and Cr(VI) oxoanions on the chitosan-silica composite.
Adsorption capacity of chitosan-silica composite compared to a partly crosslinked chitosan
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| Vanadium | 2.5 | [V10О28]6−, [НV10О28]5−, [Н2V10О28]4− | 0.05 | 2.5 | 3.59 | 183.1 |
| Molybdenum | 2.5 | MoO4 2−, [Mo6O21]6−, [Mo7O24]6− | 1.26 | 121.0 | 4.04 | 387.9 |
| Distilled water | МоО4 2− | 0.39 | 37.4 | 1.0 | 96.5 | |
| Chromium | Distilled water | НCrO4 − | 0.68 | 35.2 | 0.95 | 49.4 |
Experimental conditions: mass of sorbents—0.1 g and volume of solution—25 ml.
Figure 9Comparison of adsorption capacity of chitosan ( ) and composite ( ). Comparisons were calculated per 1 g of chitosan with respect to studied oxoanions.
Figure 10Dependence of adsorption ( ,%) on time of contact with the solutions. Dependence of adsorption (R,%) on time of contact with the solutions containing 1 mg of molybdenum at pH 2.5, 1 mg of vanadium, and 200 μg of chromium in the neutral medium.